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人类意识是由大脑信号协调的动态复杂模式支持的。

Human consciousness is supported by dynamic complex patterns of brain signal coordination.

机构信息

GIGA-Consciousness, GIGA Institute B34, University of Liège, Avenue de l'Hôpital, 11, 4000 Sart Tilman, Belgium.

INSERM, U 1127, F-75013 Paris, France.

出版信息

Sci Adv. 2019 Feb 6;5(2):eaat7603. doi: 10.1126/sciadv.aat7603. eCollection 2019 Feb.

Abstract

Adopting the framework of brain dynamics as a cornerstone of human consciousness, we determined whether dynamic signal coordination provides specific and generalizable patterns pertaining to conscious and unconscious states after brain damage. A dynamic pattern of coordinated and anticoordinated functional magnetic resonance imaging signals characterized healthy individuals and minimally conscious patients. The brains of unresponsive patients showed primarily a pattern of low interareal phase coherence mainly mediated by structural connectivity, and had smaller chances to transition between patterns. The complex pattern was further corroborated in patients with covert cognition, who could perform neuroimaging mental imagery tasks, validating this pattern's implication in consciousness. Anesthesia increased the probability of the less complex pattern to equal levels, validating its implication in unconsciousness. Our results establish that consciousness rests on the brain's ability to sustain rich brain dynamics and pave the way for determining specific and generalizable fingerprints of conscious and unconscious states.

摘要

采用大脑动力学框架作为人类意识的基石,我们确定了动态信号协调是否为脑损伤后的意识和无意识状态提供了特定且可推广的模式。协调和非协调功能磁共振成像信号的动态模式可以区分健康个体和最小意识患者。无反应患者的大脑主要表现出一种由结构连接介导的低区域间相位相干性模式,并且更有可能在模式之间转换。复杂模式在具有隐蔽认知的患者中得到了进一步证实,他们可以执行神经影像学心理意象任务,验证了这种模式在意识中的意义。麻醉增加了较不复杂模式的可能性,使其达到相同水平,验证了其在无意识中的意义。我们的结果表明,意识依赖于大脑维持丰富的大脑动力学的能力,并为确定意识和无意识状态的特定且可推广的特征铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fb7/6365115/2f23eb2d00b4/aat7603-F1.jpg

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